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首页> 外文期刊>Clinical cancer research: an official journal of the American Association for Cancer Research >Molecular pathways: Targeting MYC-induced metabolic reprogramming and oncogenic stress in cancer
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Molecular pathways: Targeting MYC-induced metabolic reprogramming and oncogenic stress in cancer

机译:分子途径:针对癌症中MYC引起的代谢重编程和致癌应激

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摘要

MYC is a multifunctional transcription factor that is deregulated in many human cancers. MYC impacts a collaborative genetic program that orchestrates cell proliferation, metabolism, and stress responses. Although the progression of MYC-amplified tumors shows robust dependence on MYC activity, directly targeting MYC as a therapeutic method has proven to be technically difficult. Therefore, alternative approaches are currently under development with a focus on interference with MYC-mediated downstream effects. To fuel rapid cell growth, MYC reprograms cancer cell metabolism in a way that is substantially different from normal cells. TheMYC-induced metabolic signature is characterized by enhanced glucose and glutamine uptake, increased lactate production, and altered amino acid metabolism. Targeting MYCreprogrammed cancer cell metabolism is considered to be promising based on multiple preclinical studies. In addition, the increased biosynthetic demand of MYC-driven tumors coupled with limited nutrient access within tumor microenvironments create multiple levels of oncogenic stress, which can also be used as tumor-specific targets for pharmacologic intervention. Presumably, the best therapeutic strategy for treating MYC-amplified tumors is combined targeting of multiple MYC-mediated pathways, especially those involved in regulating cell proliferation, metabolism, and oncogenic stress.
机译:MYC是在许多人类癌症中均失控的多功能转录因子。 MYC影响了协调性遗传程序,该程序可协调细胞增殖,新陈代谢和应激反应。尽管MYC扩增的肿瘤进展显示出对MYC活性的强烈依赖性,但是直接靶向MYC作为治疗方法已被证明在技术上是困难的。因此,目前正在开发替代方法,重点是干扰MYC介导的下游效应。为了促进细胞的快速生长,MYC以与正常细胞完全不同的方式重新编程癌细胞的代谢。 MYC诱导的代谢特征的特征在于增强的葡萄糖和谷氨酰胺摄取,增加的乳酸产生以及改变的氨基酸代谢。基于多项临床前研究,靶向MYC重新编程的癌细胞代谢被认为很有希望。此外,MYC驱动肿瘤的生物合成需求增加,再加上肿瘤微环境中有限的养分获取,造成了多种水平的致癌应激,也可作为药物干预的肿瘤特异性靶标。据推测,治疗MYC扩增肿瘤的最佳治疗策略是靶向多种MYC介导的途径,尤其是那些参与调节细胞增殖,代谢和致癌性应激的途径。

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